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http://dx.doi.org/10.21289/KSIC.2016.19.4.185

Study on Friction Characteristics of Pressure Control Valve for Ship Engine  

Choi, Won-Sik (Dept. of Bio-Industrial Machinery Eng.,Pusan Natl. Univ)
Park, In-Soo (Dept. of Bio-Industrial Machinery Eng.,Pusan Natl. Univ)
Kang, Chang-Won (Dept. of Bio-Industrial Machinery Eng.,Pusan Natl. Univ)
Sandi, Pratama Pandu (Dept. of Bio-Industrial Machinery Eng.,Pusan Natl. Univ)
Chung, Sung-Won (Dept. of Bio-Industria Machinery Eng.,Pusan Natl. Univ)
Publication Information
Journal of the Korean Society of Industry Convergence / v.19, no.4, 2016 , pp. 185-192 More about this Journal
Abstract
Low operational cost and high efficiency is absolute requirements in the mass production of the ship engine. Increasing the performance of the fuel injection system in the diesel engine is one kind of solution to improve the efficiency. Modern diesel engines are using electronic control module as the main controller in the fuel injection control system, however the mechanical system still involved in the modern control system. In modern ship engine, a control valve was used in injection fuel to regulate the flow of the fuel. High pressure and friction are intensively occur within this part, therefore high wear resist and low friction coefficient material including fine lubricating are needed. This study is to figure out the wear resist material and proper lubricant in the control valve fuel injection. The experiment has been tested using pin on disk in several treatments those are used various lubricants and non-lubricant condition. Two kinds of lubricant were used in this experiment such as INDERIN AW-32 and paraffin oil. INDERIN AW-32 has a better result compared to non-lubricant condition, which are 20% performance increases than non-lubricant condition. SCM 440 was providing small friction coefficient in the lower velocity. The friction coefficient was constantly maintains at 0.1 m/s of velocity or above respectively with the increment of the loads. Using INDERIN AW-32 and paraffin oil the lowest friction coefficient occurred at the lower load, and increases side by side with the increment of loads.
Keywords
Friction; Wear; Pin on disk; Ship Engin;
Citations & Related Records
Times Cited By KSCI : 6  (Citation Analysis)
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